CN103544357A - Method and device for achieving ANSYS calculation tasks - Google Patents

Method and device for achieving ANSYS calculation tasks Download PDF

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CN103544357A
CN103544357A CN201310528731.9A CN201310528731A CN103544357A CN 103544357 A CN103544357 A CN 103544357A CN 201310528731 A CN201310528731 A CN 201310528731A CN 103544357 A CN103544357 A CN 103544357A
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calculation
computations
input
statement
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CN103544357B (en
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杨亮
马少杰
曹振南
李斌
曹征
何沧平
姜金良
苗春葆
田相桂
易成
沈杰
侯雪峰
赵明坤
胡耀国
范娟
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Zhongke Shuguang International Information Industry Co ltd
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Dawning Information Industry Beijing Co Ltd
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Abstract

The invention discloses a method and device for achieving ANSYS calculation tasks. The achieving method comprises the steps of obtaining calculation instructions input by users; analyzing the calculation instructions, and determining calculation types and calculation parameters; enabling the calculation parameters to be substituted in pre-allocated calculation command statements corresponding to the calculation types, and carrying out the calculation command statements. By means of the technical scheme, the achievement process of the ANSYS calculation tasks does not need to be by means of command lines, the calculation tasks can be finished only by means of simple operation based on a graphic interface, operation difficulty is greatly reduced, execution efficiency is improved, and the error probability is reduced; besides, computing resources can be reasonably distributed and utilized by the analysis of resource request instructions input by the users and the execution of computing resource scheduling statements, and the computing resource utilization rate is improved; in addition, by the judgment of validity of information input by the users, safety and stability in the running of an ANSYS calculation program can be guaranteed well.

Description

The implementation method of the calculation task of ANSYS and device
Technical field
The science that the present invention relates to is calculated field, and especially, relates to implementation method and the device of the calculation task of a kind of ANSYS.
Background technology
ANSYS software is merge structure, fluid, electric field, magnetic field, Analysis of The Acoustic Fields is in the large-scale general finite element analysis software of one, software analysis computing module comprises that structure analysis (can carry out linear analysis, nonlinear analysis and nonlinearity analysis), hydrodynamic analysis, electromagnetic field analysis, Analysis of The Acoustic Fields, the coupling analysis of Piezoelectric analysis and multiple physical field, this software provides 100 kinds of above cell types, the various structure and materials that are used in model engineering, in addition, also allow user need to software be expanded according to oneself, comprise User defined element attribute, self-defined material constitutive (this structure of structure, this structure of heat, this structure of fluid), User Defined flow field boundary condition, User Defined structural break criterion and crack propagation law etc.
In traditional HPCC environment, the calculation procedure that user will move based on ANSYS software has two kinds of modes conventionally: the one, in the environment for use of job scheduling, need to use long-range character terminal to carry out sequence of operations under command line environment, generally have following flow process:
Be ready to executable file, input file, data file of ANSYS calculation procedure etc., these files conventionally need to be placed on the overall situation of cluster and share in storage, user generally uses the instruments such as FTP, SFTP to upload these files to cluster, in most of the cases, user also needs, with the text edit tool, input file etc. is carried out to edit-modify.
Determine the process number that this ANSYS calculation procedure of operation needs, and move on which node, the mode that these information exchanges are crossed to command line parameter passes to the process initiation device of ANSYS, and the process initiation device by ANSYS starts this ANSYS calculation procedure of operation.
After program has been moved, check result of calculation, or use the instruments such as FTP, SFTP to download destination file to subscriber's local terminal.
It is more than the main flow process of directly moving ANSYS calculation procedure; under actual conditions; user submits parallel computation task on HPCC; the unified interface that uses job scheduling software to provide is provided; user also needs to write a job scheduling script conventionally again; in script, apply for computational resource, by this script, submit parallel computation task to, by job scheduling software, come Processing tasks queuing, Resources allocation, initiation concurrent program.
Another kind of mode is the graphical operation interface of using ANSYS calculation procedure, generally has following flow process:
User generally uses the instruments such as FTP, SFTP to cluster, to upload the data file of ANSYS calculation procedure.
Start the graphical operation interface of ANSYS calculation procedure, select to calculate needed data file, the required calculating parameter of computational data file and the process number needing, nodes etc. are set, mouse is clicked computing button and is started computing.
After program has been moved, check result of calculation, or use the instruments such as FTP, SFTP to download destination file to subscriber's local terminal.
Be more than the main flow process that starts graphical operation interface operation ANSYS calculation procedure, job scheduling software cannot carry out calculation task to it and process the operations such as queuing, Resources allocation.
Introduced above in traditional HPCC environment, the two kind basic operation procedures of user's operation based on ANSYS calculation procedure, the first flow process conventionally need to be under long-range character terminal, mode by order line realizes, vast domestic consumer for non-bone ash level, operation easier is large, and execution efficiency is low, and error probability is large; Although the second flow process decreases in operation easier, in man-machine interaction, experience better, but cannot use the queuing of HPCC job scheduling software Processing tasks, Resources allocation, initiation concurrent program, be that whole high-performance calculation resource cannot in order, efficiently and reasonably be used, even cause the waste of computational resource and distribution uneven.
The drawback of above two kinds of executive modes is mainly manifested in:
Use difficulty very large.Want to submit to smoothly an ANSYS parallel computation task, user often needs to be familiar with very much a lot of knowledge and instrument a lot of and that its specialty background is irrelevant, such as use of the calling of (SuSE) Linux OS basic operation, Shell script, conventional text editing and character handling implement, MPI environment, job scheduling software etc., the learning curve of these knowledge or instrument is very steep, skilled grasp usually needs to spend the time of several years, and such trace utilization cost is very huge concerning vast domestic consumer.
Execution efficiency is low.Want to submit an ANSYS parallel computation task to smoothly, need to carry out a plurality of flow processs, need to use some professional tools, need to carry out complicated loaded down with trivial details operation in command line environment, thereby cause the submission of parallel computation task to be wasted time and energy, execution efficiency is low.
Error probability is large.For most of domestic consumer, in command line environment, carry out complicated loaded down with trivial details operation, occur that human operational error's probability is very large, particularly for the unfamiliar user of operating process, at the links of carrying out, all easily encounter problems.
, also there is the risk of security in the capable terminal of ,Dui domestic consumer open command for the keeper of HPCC, user's maloperation may affect the stable operation of system, and hacker also likely avails oneself of the opportunity to get in.
Use the method at the graphical operation interface of ANSYS calculation procedure, can not make application program and job scheduling organically combine, make job scheduling software cannot come Processing tasks queuing, Resources allocation, initiation ANSYS concurrent program, when using graphical operation interface, can only for providing computing node fixing in HPCC, user complete calculating by hand, cannot be according to the big or small dynamic adjustments computational resource of calculated amount, the computing resource waste that cannot reuse while also simultaneously having caused computing node idle again.
In the prior art, although exist some business software for calculation to provide the parallel computation task of oneself to carry out instruction submission by graphical submission interface, but be all for indivedual software, there is no universality, and, also need special client software to coordinate, cannot realize or exist problem in various degree with the combination of job scheduling software.
While moving ANSYS calculation procedure for user in correlation technique, need under long-range character terminal, the mode by order line realize, operation easier is large, and execution efficiency is low, and the problem that error probability is large not yet proposes effective solution at present.
Summary of the invention
While moving ANSYS calculation procedure for user in correlation technique, need under long-range character terminal, the mode by order line realize, operation easier is large, execution efficiency is low, the problem that error probability is large, the present invention proposes implementation method and the device of the calculation task of a kind of ANSYS, can make user without by the mode of order line, only by shirtsleeve operation, input computations, just can realize whole calculating process.
Technical scheme of the present invention is achieved in that
According to an aspect of the present invention, provide the implementation method of the calculation task of a kind of ANSYS, this implementation method comprises:
Obtain the computations of user's input;
Computations is resolved to the calculating parameter comprising in definite type of calculating and computations;
Calculating parameter is updated in the pre-configured calculation command statement corresponding with compute type, and carries out this calculation command statement.
In addition,, before carrying out the statement of substitution calculating parameter, this implementation method further comprises:
Whether the computations that judges user's input is legal, and in the situation that the result of judgement is no, forbids carrying out calculation command statement and point out;
Wherein, the whether legal condition of computations that judges user input comprise following one of at least:
The scope of calculating parameter in the form of computations, computations.
In addition,, before carrying out the statement of substitution calculating parameter, this implementation method further comprises:
The resource request instruction of obtaining user's input, to resource request, instruction is resolved, and obtains resource parameters, and wherein, resource parameters is used for representing user's requested resource amount;
Resource parameters is updated to pre-configured computational resource scheduling statement, and carries out this computational resource scheduling statement.
In addition,, before carrying out computational resource scheduling statement, this implementation method further comprises:
Whether the resource request instruction that judges user's input is legal, and in the situation that the determination result is NO, forbids carrying out computational resource scheduling statement and point out;
Wherein, the whether legal condition of resource request instruction that judges user input comprise following one of at least:
The form of computational resource request instruction, user's requested resource amount.
Wherein, computational resource comprise following one of at least:
The store path of computing node, CPU check figure, calculating duration, result of calculation.
In addition the computations that, obtains user input comprises:
By graphical interfaces is provided in advance, obtains the calculating parameter of inputting in the parameter input frame of user in graphical interfaces and/or the store path of inputting in the path input frame in graphical interfaces according to user and obtain the file that comprises calculating parameter and determine the input parameter in this document.
Wherein, graphical interfaces comprises web interface.
According to a further aspect in the invention, provide the implement device of the calculation task of a kind of ANSYS, this implement device comprises:
The first acquisition module, for obtaining the computations of user's input;
Parsing module, for computations is resolved, the calculating parameter comprising in definite type of calculating and computations;
The first execution module, for calculating parameter being updated to the pre-configured calculation command statement corresponding with compute type, and carries out this calculation command statement.
In addition, this implement device further comprises:
Judge module, for before carrying out the statement of substitution calculating parameter, judges that whether the computations of user's input is legal, and in the situation that the result of judgement is no, forbids carrying out calculation command statement and point out;
Wherein, the whether legal condition of computations that judges user input comprise following one of at least:
The scope of calculating parameter in the form of computations, computations.
In addition, this implement device further comprises:
The second acquisition module, for before carrying out the statement of substitution calculating parameter, obtains the resource request instruction of user's input, and to resource request, instruction is resolved, and obtains resource parameters, and wherein, resource parameters is used for representing user's requested resource amount;
The second execution module, for resource parameters being updated to pre-configured computational resource scheduling statement, and carries out this computational resource scheduling statement.
The present invention is by resolving calculating parameter and the compute type obtaining the computations from user's input, and calculating parameter is updated to the pre-configured calculation command statement corresponding with this compute type, and carry out this calculation command statement, can make user only need input simple computations, without carrying out the operation of complicated order line, just can complete calculating, reduced the difficulty that user uses ANSYS calculation procedure, improve execution efficiency, reduced error probability.
Accompanying drawing explanation
In order to be illustrated more clearly in the embodiment of the present invention or technical scheme of the prior art, to the accompanying drawing of required use in embodiment be briefly described below, apparently, accompanying drawing in the following describes is only some embodiments of the present invention, for those of ordinary skills, do not paying under the prerequisite of creative work, can also obtain according to these accompanying drawings other accompanying drawing.
Fig. 1 is the implementation method process flow diagram according to the calculation task of the ANSYS of the embodiment of the present invention;
Fig. 2 is the implement device block diagram according to the calculation task of the ANSYS of the embodiment of the present invention.
Embodiment
Below in conjunction with the accompanying drawing in the embodiment of the present invention, the technical scheme in the embodiment of the present invention is clearly and completely described, obviously, described embodiment is only the present invention's part embodiment, rather than whole embodiment.Embodiment based in the present invention, the every other embodiment that those of ordinary skills obtain, belongs to the scope of protection of the invention.
According to embodiments of the invention, provide the implementation method of the calculation task of a kind of ANSYS.
As shown in Figure 1, this implementation method comprises:
Step S101, obtains the computations of user's input;
Step S103, resolves computations, the calculating parameter comprising in definite type of calculating and computations;
Step S105, is updated to calculating parameter in the pre-configured calculation command statement corresponding with compute type, and carries out this calculation command statement.
In addition,, before carrying out the statement of substitution calculating parameter, this implementation method further comprises:
Whether the computations that judges user's input is legal, and in the situation that the result of judgement is no, forbids carrying out calculation command statement and point out;
Wherein, the whether legal condition of computations that judges user input comprise following one of at least:
The scope of calculating parameter in the form of computations, computations.
In addition,, before carrying out the statement of substitution calculating parameter, this implementation method further comprises:
The resource request instruction of obtaining user's input, to resource request, instruction is resolved, and obtains resource parameters, and wherein, resource parameters is used for representing user's requested resource amount;
Resource parameters is updated to pre-configured computational resource scheduling statement, and carries out this computational resource scheduling statement.
In addition,, before carrying out computational resource scheduling statement, this implementation method further comprises:
Whether the resource request instruction that judges user's input is legal, and in the situation that the determination result is NO, forbids carrying out computational resource scheduling statement and point out;
Wherein, the whether legal condition of resource request instruction that judges user input comprise following one of at least:
The form of computational resource request instruction, user's requested resource amount.
Wherein, computational resource comprise following one of at least:
The store path of computing node, CPU check figure, calculating duration, result of calculation.
In addition the computations that, obtains user input comprises:
By graphical interfaces is provided in advance, obtains the calculating parameter of inputting in the parameter input frame of user in graphical interfaces and/or the store path of inputting in the path input frame in graphical interfaces according to user and obtain the file that comprises calculating parameter and determine the input parameter in this document.
Wherein, graphical interfaces comprises web interface.
According to embodiments of the invention, also provide the implement device of the calculation task of a kind of ANSYS.
As shown in Figure 2, this implement device comprises:
The first acquisition module 21, for obtaining the computations of user's input;
Parsing module 22, for computations is resolved, the calculating parameter comprising in definite type of calculating and computations;
The first execution module 23, for calculating parameter being updated to the pre-configured calculation command statement corresponding with compute type, and carries out this calculation command statement.
In addition, this implement device further comprises:
Judge module (not shown), for before carrying out the statement of substitution calculating parameter, judges that whether the computations of user's input is legal, and in the situation that the result of judgement is no, forbids carrying out calculation command statement and point out;
Wherein, the whether legal condition of computations that judges user input comprise following one of at least:
The scope of calculating parameter in the form of computations, computations.
In addition, this implement device further comprises:
The second acquisition module (not shown), for before carrying out the statement of substitution calculating parameter, obtains the resource request instruction of user's input, to resource request, instruction is resolved, obtain resource parameters, wherein, resource parameters is used for representing user's requested resource amount;
The second execution module (not shown), for resource parameters being updated to pre-configured computational resource scheduling statement, and carries out this computational resource scheduling statement.
For example, in one embodiment, according to technical scheme of the present invention, for ANSYS calculation procedure, carried out web encapsulation, and write corresponding software interface and realized concrete function.
By encapsulation, the job invocation flow process of ANSYS calculation procedure is hidden in to bottom, offer the web interface of a simple, intuitive of user, user only needs to carry out shirtsleeve operation on web interface, for example: desired parameters is calculated in input, select compute type, needed resource is calculated in input, select the store path of result of calculation, etc., implementation method and the device of the ANSYS calculation task that embodiments of the invention provide, can obtain calculating parameter and the compute type of above-mentioned user's input, and the calculating parameter acquiring is updated to the pre-configured calculation command statement corresponding with this compute type, carry out this calculation command statement and return to result of calculation, and, the store path of the result of calculation that user can apply for according to oneself is checked result of calculation.
And, implementation method and the device of the ANSYS calculation task providing according to embodiments of the invention, can also carry out validity judgement to the computations of user's input, if the calculation command statement identification that the computations form of user's input can not be preconfigured, refusal is carried out this statement, and send prompting message, thereby user error operation or the malicious attack to software have been avoided.
In addition, user, apply in the process of computational resource, only need to be by the quantity of the computational resource of wish application, and/or resource type is inputted in corresponding text box, or select in corresponding drop-down menu, the implementation method of the ANSYS calculation task providing in the embodiment of the present invention can be obtained the resource request content of user's input, resource in server is dispatched, offer user, for example, by remote control software VNC (Virtual Network Computing) management function, can in job scheduling system, realize graphic interaction operation, automatically the graphical interfaces of the software such as Remote Open CAE on the computing node distributing in operating system, at graphical interfaces, set up and calculate after exercise question, clicking computed push-buttom can directly be delivered to operation on the computing node that job scheduling distributes.Meanwhile, if the computational resource quantity that user applies for has exceeded the total resources that server can provide at present, refuse user's application, and send prompting message.
The web method for packing providing by above-described embodiment, user only need to carry out shirtsleeve operation on web interface just can realize a whole set of flow processs such as data file preparation, computational resource application, calculation task are submitted to, result of calculation is checked, without by the mode of order line, greatly reduce user's use threshold, improve service efficiency, reduce error probability.
In the present embodiment, for ANSYS calculation procedure, carry out web encapsulation, for user brings brand-new use-pattern, effect is mainly reflected in:
Greatly reduce and use difficulty.User no longer needs skillfully to grasp the calling of (SuSE) Linux OS basic operation, Shell script, conventional text editing and character handling implement, MPI environment, job scheduling software etc. and its specialty background irrelevant knowledge and instrument, just can easily complete the work such as preparation, execution of ANSYS parallel computation task, greatly reduce use threshold.
Greatly improve service efficiency.The order line operation Hide All of very complicated, at bottom, is carried out at bottom automatic batch, can save a large amount of manual operation time, improves service efficiency.
Improve the success ratio of job invocation.The web method for packing providing according to embodiment, parameter and the data that can at web interface, submit to user are carried out the validity checking of different latitude, such as, whether the computational resource that checks user's application surpasses its authority, whether the parameter of user input is legal, and whether user's input file form is correct etc., if the mistake of judging, can provide corresponding prompting at Web interface, by these validity checkings, can greatly improve the success ratio that parallel task is submitted to.
Easily realize sophisticated functions.Some complexity or Premium Features during the operation of ANSYS concurrent program, selection such as computational grid, start cpu process binding etc., if need to specify complicated parameter by command line mode, complex operation, use difficulty larger, after web encapsulation, user only need to just can realize these functions by some Option Boxs on interface.
Improve the safety in utilization of HPCC.The job invocation operation of domestic consumer is encapsulated in behind web interface, and what user carried out is all enclosed operation, has avoided to a great extent affecting user's illegal operation of system stability or safety.
Software graphic interface and job scheduling seamless combination.Realized and in job scheduling system, realized graphic interaction operation, automatically the graphical interfaces of the software such as Remote Open CAE on the computing node distributing in operating system, at graphical interfaces, set up and calculate after exercise question, click computed push-buttom and can directly operation be delivered on the computing node that job scheduling distributes.
In sum, by means of technique scheme of the present invention, by obtaining the computations of inputting in the parameter input frame of user in graphical interfaces, and/or resource bid instruction, and be updated to corresponding command statement by resolve the parameter information obtaining from instruction, and carry out this command statement, can make the implementation procedure of calculation task of ANSYS without passing through order line, greatly reduce operation easier, improve execution efficiency, reduce error probability, and, by the execution to the parsing of the resource request instruction of user's input and computational resource scheduling statement, can reasonable distribution and utilize computational resource, improved computational resource utilization factor, in addition, by the validity judgement to user's input information, can guarantee well the safe and stable operation of ANSYS calculation procedure.
The foregoing is only preferred embodiment of the present invention, in order to limit the present invention, within the spirit and principles in the present invention not all, any modification of doing, be equal to replacement, improvement etc., within all should being included in protection scope of the present invention.

Claims (10)

1. an implementation method for the calculation task of finite element analysis software ANSYS, is characterized in that, comprising:
Obtain the computations of user's input;
Described computations is resolved to the calculating parameter comprising in definite type of calculating and described computations;
Described calculating parameter is updated in the pre-configured calculation command statement corresponding with described compute type, and carries out this calculation command statement.
2. implementation method according to claim 1, is characterized in that, before carrying out the statement of substitution calculating parameter, described implementation method further comprises:
Whether the computations that judges described user's input is legal, and in the situation that the result of described judgement is no, forbids carrying out calculation command statement and point out;
Wherein, the whether legal condition of computations that judges described user input comprise following one of at least:
The scope of calculating parameter in the form of described computations, described computations.
3. implementation method according to claim 1, is characterized in that, before carrying out the statement of substitution calculating parameter, described implementation method further comprises:
Obtain the resource request instruction of user's input, described resource request instruction is resolved, obtain resource parameters, wherein, described resource parameters is used for representing user's requested resource amount;
Described resource parameters is updated to pre-configured computational resource scheduling statement, and carries out this computational resource scheduling statement.
4. implementation method according to claim 3, is characterized in that, before carrying out computational resource scheduling statement, described implementation method further comprises:
Whether the resource request instruction that judges described user input is legal, and, forbids carrying out computational resource scheduling statement and point out the determination result is NO in the situation that described;
Wherein, the whether legal condition of resource request instruction that judges described user input comprise following one of at least:
The form of described computational resource request instruction, user's requested resource amount.
5. implementation method according to claim 3, is characterized in that, described computational resource comprise following one of at least:
The store path of computing node, CPU check figure, calculating duration, result of calculation.
6. according to the implementation method described in any one in claim 1 to 5, it is characterized in that, the computations that obtains user's input comprises:
By graphical interfaces is provided in advance, obtains the calculating parameter of inputting in the parameter input frame of user in described graphical interfaces and/or the store path of inputting in the path input frame in described graphical interfaces according to user and obtain the file that comprises calculating parameter and determine the input parameter in this document.
7. according to the implementation method described in any one in claim 1 to 5, it is characterized in that, described graphical interfaces comprises web interface.
8. an implement device for the calculation task of finite element analysis software ANSYS, is characterized in that, comprising:
The first acquisition module, for obtaining the computations of user's input;
Parsing module, for described computations is resolved, the calculating parameter comprising in definite type of calculating and described computations;
The first execution module, for described calculating parameter being updated to the pre-configured calculation command statement corresponding with described compute type, and carries out this calculation command statement.
9. implement device according to claim 8, is characterized in that, further comprises:
Judge module, for before carrying out the statement of substitution calculating parameter, judges that whether the computations of described user's input is legal, and in the situation that the result of described judgement is no, forbids carrying out calculation command statement and point out;
Wherein, the whether legal condition of computations that judges described user input comprise following one of at least:
The scope of calculating parameter in the form of described computations, described computations.
10. implement device according to claim 8, is characterized in that, further comprises:
The second acquisition module, for before carrying out the statement of substitution calculating parameter, obtains the resource request instruction of user's input, and described resource request instruction is resolved, and obtains resource parameters, and wherein, described resource parameters is used for representing user's requested resource amount;
The second execution module, for described resource parameters being updated to pre-configured computational resource scheduling statement, and carries out this computational resource scheduling statement.
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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107797860A (en) * 2017-11-21 2018-03-13 上海望友信息科技有限公司 Task automatic processing method and system, client, server and storage medium
CN108804775A (en) * 2018-05-22 2018-11-13 郑州云海信息技术有限公司 A kind of high speed signal scattering parameter computational methods and device based on Matlab
CN109933825A (en) * 2017-12-18 2019-06-25 国家电投集团科学技术研究院有限公司 Calculation method and system based on major accident numerical simulation best practices directive/guide
CN111880843A (en) * 2020-07-31 2020-11-03 重庆医科大学 Biological big data analysis system and method based on Linux single command line
CN111914288A (en) * 2020-07-09 2020-11-10 上海红阵信息科技有限公司 Multi-service analysis processing management system based on biological characteristics

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060031046A1 (en) * 2004-08-09 2006-02-09 Asper Robert W Finite element analysis tire footprint smoothing algorithm using multiple load cases
CN101441580A (en) * 2008-12-09 2009-05-27 华北电网有限公司 Distributed paralleling calculation platform system and calculation task allocating method thereof

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060031046A1 (en) * 2004-08-09 2006-02-09 Asper Robert W Finite element analysis tire footprint smoothing algorithm using multiple load cases
CN101441580A (en) * 2008-12-09 2009-05-27 华北电网有限公司 Distributed paralleling calculation platform system and calculation task allocating method thereof

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107797860A (en) * 2017-11-21 2018-03-13 上海望友信息科技有限公司 Task automatic processing method and system, client, server and storage medium
CN109933825A (en) * 2017-12-18 2019-06-25 国家电投集团科学技术研究院有限公司 Calculation method and system based on major accident numerical simulation best practices directive/guide
CN108804775A (en) * 2018-05-22 2018-11-13 郑州云海信息技术有限公司 A kind of high speed signal scattering parameter computational methods and device based on Matlab
CN108804775B (en) * 2018-05-22 2022-02-18 郑州云海信息技术有限公司 Matlab-based high-speed signal scattering parameter calculation method and device
CN111914288A (en) * 2020-07-09 2020-11-10 上海红阵信息科技有限公司 Multi-service analysis processing management system based on biological characteristics
CN111880843A (en) * 2020-07-31 2020-11-03 重庆医科大学 Biological big data analysis system and method based on Linux single command line

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